Corrosive synthesis and enhanced electromagnetic absorption properties of hollow porous Ni/SnO2 hybrids.
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Summary
This novel hollow porous hybrid is an attractive candidate for new types of high performance electromagnetic wave-absorbing materials, which satisfies the current requirements of electromagnetic absorbing materials, including wide-band absorption, high-efficiency absorption capability, thin thickness and light weight.
- Type
- article
- Published
- 2015-09-01
- Cited by
- 105
- References
- 64
- OpenAlex
- https://openalex.org/W1886223843
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:283467
Keywords
Materials science, Reflection loss, Microwave, Permittivity, Electromagnetic radiation
References
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- Electromagnetic and absorption properties of some microwave absorbers
- Preparation and microwave absorption of porous hollow ZnO by CO2 soft-template
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- Observations of exchange resonance modes on submicrometer sized ferromagnetic particles
- Enhanced microwave absorption in Ni/polyaniline nanocomposites by dual dielectric relaxations
- Formation of FeMoO4 hollow microspheres via a chemical conversion-induced Ostwald ripening process
- Controlled Synthesis and Morphology-Dependent Electromagnetic Properties of Hierarchical Cobalt Assemblies
- The electromagnetic properties and microwave absorption of mesoporous carbon
- Investigation on the electromagnetic wave absorption properties of Ni chains synthesized by a facile solvothermal method
- Decoration of basalt fibers with hybrid Fe3O4 microspheres and their microwave absorption application in bisphthalonitrile composites
- Microwave absorption properties of the carbon-coated nickel nanocapsules
- Strategy for Ultrafine Ni Fibers and Investigation of the Electromagnetic Characteristics
- Magnetic carbon nanofibers containing uniformly dispersed Fe/Co/Ni nanoparticles as stable and high-performance electromagnetic wave absorbers
- Microwave absorption properties of core double-shell FeCo/C/BaTiO₃ nanocomposites.
- Synthesis, Multi-Nonlinear Dielectric Resonance, and Excellent Electromagnetic Absorption Characteristics of Fe3O4/ZnO Core/Shell Nanorods
- Cole—Cole Diagram and the Distribution of Relaxation Times
Cited by
- Tailoring the input impedance of FeCo/C composites with efficient broadband absorption.
- Preparation and microwave absorption properties of multi-walled carbon nanotubes decorated with Ni-doped SnO2 nanocrystals
- Synthesis of lightweight, hierarchical cabbage-like composites as superior electromagnetic wave absorbent
- Facial Synthesis of Zn-doped Fe3O4 with Enhanced Electromagnetic Wave Absorption Performance in S and C Bands
- Porous silicon carbide derived from apple fruit with high electromagnetic absorption performance
- Synthesis and microwave absorption property of two-dimensional porous nickel oxide nanoflakes/carbon nanotubes nanocomposites with a threaded structure
- Fabrication and high-performance microwave absorption of Ni@SnO2 @PPy Core-Shell composite
- Iron cobalt/polypyrrole nanoplates with tunable broadband electromagnetic wave absorption
- Facile synthesis and enhanced electromagnetic microwave absorption performance for porous core-shell Fe3O4@MnO2 composite microspheres with lightweight feature
- Yolk-Shell Ni@SnO2 Composites with a Designable Interspace To Improve the Electromagnetic Wave Absorption Properties.
- Facile synthesis of net-like Fe3O4/MWCNTs decorated by SnO2 nanoparticles as a highly efficient microwave absorber
- Effect of annealing temperature on structure, magnetic and microwave absorption properties of Fe–B submicrometer particles
- Solvothermal synthesis of flower-like CoS hollow microspheres with excellent microwave absorption properties
- Air@rGO€Fe3O4 microspheres with spongy shells: self-assembly and microwave absorption performance
- Synthesis of tin oxide (SnO & SnO2) micro/nanostructures with novel distribution characteristic and superior photocatalytic performance
- Facile synthesis of yolk–shell Ni@void@SnO2(Ni3Sn2) ternary composites via galvanic replacement/Kirkendall effect and their enhanced microwave absorption properties
- One-pot synthesis of FeCo alloy and iron borate composite nanorods with excellent electromagnetic wave absorption properties
- A microwave-triggered controllable drug delivery system based on hollow-mesoporous cobalt ferrite magnetic nanoparticles
- Solvothermal synthesis and good microwave absorbing properties for magnetic porous-Fe3O4/graphene nanocomposites
- A permittivity regulating strategy to achieve high-performance electromagnetic wave absorbers with compatibility of impedance matching and energy conservation
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